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钨修饰对镍载氧体的沼气化学链重整制氢性能影响
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作者 龚陈俊 梅道锋 《化工进展》 EI CAS CSCD 北大核心 2023年第4期2130-2141,共12页
沼气中含有约60%CH_(4)和40%CO_(2),可以作为化学链重整(chemical looping reforming,CLR)的原料。以高铝耐火砖为惰性载体负载Ni作为载氧体(oxygen carrier,OC),在无H_(2)S的条件H_(2)产率和CO产率较高,且沼气中的CH_(4)和CO_(2)能够... 沼气中含有约60%CH_(4)和40%CO_(2),可以作为化学链重整(chemical looping reforming,CLR)的原料。以高铝耐火砖为惰性载体负载Ni作为载氧体(oxygen carrier,OC),在无H_(2)S的条件H_(2)产率和CO产率较高,且沼气中的CH_(4)和CO_(2)能够完全转化。前期的研究显示沼气中含有的少量H_(2)S会对载氧体(OC)活性产生负面影响,导致载氧体失活。根据已有文献,钨元素能够抑制H_(2)S对催化剂的毒化作用。本文以高铝耐火砖为惰性载体,制备了同时含有W和Ni的载氧体、改变Ni和W的浸渍顺序,探究W对化学链重整制氢特性的影响。将1000μL/L H_(2)S和CH_(4)/CO_(2)为3/2的气氛混合来模拟含硫沼气,在批次进料流化床反应器中开展多种工况下的实验。结果显示,经钨修饰后载氧体的催化性能均有一定的降低,而不同的钨修饰顺序对重整性能也具有一定的影响。对于不掺杂H_(2)S的沼气,相对于OC-Ni=W(镍和钨同时负载)和OC-W-Ni(先负载钨后负载镍)而言,OC-Ni-W(先负载镍后负载钨)具有更高的催化性能。在沼气中掺杂1000μL/L H_(2)S后,相对于其他两种载氧体,OC-Ni-W载氧体具有更高的CO产率和H_(2)产率。 展开更多
关键词 化学链重整 沼气 镍载氧体 钨修饰 硫化氢
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活性物质分布对镍基载氧体固定床化学链燃烧的影响 被引量:3
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作者 尹靖 郭雪岩 张岩 《能源研究与信息》 2017年第1期43-49,共7页
采用实验的方法,以空气和甲烷为反应气体,研究了活性物质分布对镍基载氧体固定床化学链燃烧的影响.实验结果表明:气体流量会同时对温升和反应速率产生影响,其中对反应速率影响更大,流量越大,反应速率越大,温升越大;半活性颗粒对应的反... 采用实验的方法,以空气和甲烷为反应气体,研究了活性物质分布对镍基载氧体固定床化学链燃烧的影响.实验结果表明:气体流量会同时对温升和反应速率产生影响,其中对反应速率影响更大,流量越大,反应速率越大,温升越大;半活性颗粒对应的反应器轴心处各点最大温升大于全活性颗粒对应的轴心处各点最大温升;相同条件下全活性颗粒的反应速率略大于半活性颗粒.研究结果表明,半活性颗粒更有利于活性物质反应完全,其反应特性更优. 展开更多
关键词 固定床 化学链燃烧 活性物质分布
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Morphology effect of zirconia support on the catalytic performance of supported Ni catalysts for dry reforming of methane 被引量:5
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作者 李伟作 赵忠奎 +1 位作者 焦艳华 王桂茹 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第12期2122-2133,共12页
An immature pinecone shaped hierarchically structured zirconia (ZrO2-ipch) and a cobblestone-like zirconia nanoparticulate (ZrO2-cs), both with the monoclinic phase (m-phase), were synthesized by the facile hydr... An immature pinecone shaped hierarchically structured zirconia (ZrO2-ipch) and a cobblestone-like zirconia nanoparticulate (ZrO2-cs), both with the monoclinic phase (m-phase), were synthesized by the facile hydrothermal method and used as the support for a Ni catalyst for the dry reforming of methane (DRM) with CO2. ZrO2-ipch is a much better support than ZrO2-cs and the traditional ZrO2 irregular particles made by a simple precipitation method (ZrO2-ip). The supported Ni catalyst on ZrO2-ipch (Ni/ZrO2-ipch) exhibited outstanding catalytic activity and coke-resistant stability compared to the ones on ZrO2-cs (Ni/ZrO2-cs) and ZrO2-ip (Ni/ZrO2-ip). Ni/ZrO2-ip exhibited the worst catalytic performance. The origin of the significantly enhanced catalytic performance was revealed by characterization including XRD, N2 adsorption measurement (BET), TEM, H2-TPR, CO chemisorption, CO2-TPD, XPS and TGA. The superior catalytic activity of Ni/ZrO2-ipch to Ni/ZrO2-cs or Ni/ZrO2-ip was ascribed to a higher Ni dispersion, increased reducibility, enhanced oxygen mo- bility, and more basic sites with a higher strength, which were due to the unique hierarchically structural morphology of the ZrO2-ipch support. Ni/ZrO2-ipch exhibited better stability for the DRM reaction than Ni/ZrO2-ip, which was ascribed to its higher resistance to Ni sintering due to a strengthened metal-support interaction and the confinement effect of the mesopores and coke deposition resistance. The higher coking resistance of Ni/ZrO2-ipch for the DRM reaction in comparison with Ni/ZrOz-ip orignated from the coke-removalabitity of the higher amount of lattice oxygen and more basic sites, confirmed by XPS and CO2-TPD analysis, and the stabilized Ni on the Ni/ZrO2-ipch catalyst by the confinement effect of the mesopores of the hierarchical ZrO2-ipch sup- port. The superior catalytic performance and coking resistance of the Ni/ZrO2-ipch catalyst makes it a promising candidate for synthesis gas production from the DRM reaction. 展开更多
关键词 Ni-based catalystZrO2 supportHierarchical structure Morphology effect Dry reforming of methane Synthesis gas Coke resistance
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